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171.
杨红飞  王友保  李建龙 《生态环境》2011,(10):1470-1477
通过盆栽试验,系统研究了Cu、Zn重金属污染对油菜(Brassica chinensis L.)生长、SOD保护酶活性、脯氨酸、可溶性糖及Cu、Zn在油菜体内吸收富集的影响。结果表明:Cu、Zn污染对油菜生物量和生理生化指标(SOD保护酶活性、脯氨酸和可溶性糖)均有影响。随着Cu、Zn质量分数的升高,植株干物重和SOD保护酶活性表现为先增后降;当Cu质量分数达到1 000 mg?kg-1时,油菜干物重和SOD酶活性分别比对照下降36.79%、66.67%;当Zn质量分数达到3 000 mg?kg-1时,油菜干物重和SOD酶活性分别比对照下降55.21%、82.05%。Cu污染下,油菜叶片脯氨酸质量分数逐渐下降,总可溶性糖质量分数表现为先增后降;Zn污染下,脯氨酸和总可溶性糖质量分数均表现为先增后降。Cu、Zn污染使油菜幼苗叶片及根中的Cu、Zn质量分数明显增加,根部的积累尤其明显。当Cu处理为1 000 mg?kg-1时,油菜茎叶和根中质量分数分别为57.6、424.162 mg?kg-1;当Zn处理为1 000 mg?kg-1时,油菜茎叶和根中质量分数分别为240、608.54 mg?kg-1。与Zn相比,Cu主要积累在油菜的根部,向茎叶迁移累积的量很少,并且随着添加质量分数的增加,茎叶吸收Cu的量变化不大。总之,重金属Zn相对于Cu更容易积累于油菜的地上部分,从而更易进入食物链,它们在油菜体内富集都对其生理生化和营养产生了明显毒害作用。  相似文献   
172.
为了解黄河三角洲地下水浅埋区柽柳(Tamarix chinensis Lour.)对地下水矿化度的适应特征,运用叶片气体交换和树干液流技术,测定了地下水埋深为0.9 m时淡水、微咸水(3 g·L-1)、咸水(8 g·L-1)和盐水(20 g·L-1)四种矿化度下柽柳的光合作用和水分利用等参数。结果表明:随地下水矿化度升高:(1)土壤水、盐含量和土壤溶液绝对浓度均逐渐升高。(2)叶片最大净光合速率和光饱和点在咸水下最高;表观量子效率、气孔导度、蒸腾速率、胞间CO2浓度、树干液流速率等在微咸水下最高;以上指标均在盐水矿化度下最低。水分利用效率和气孔限制值在微咸水下最低,盐水下最高。在地下水埋深0.9 m时,咸水矿化度下柽柳光合效率高,光照生态幅宽,水分利用效率高,适于柽柳幼苗的生长。  相似文献   
173.
生物炭和鸡粪对镉低积累油菜吸收镉的影响   总被引:13,自引:0,他引:13  
采用田间试验,研究在污灌菜地上施用生物炭和鸡粪对镉低积累油菜生长和镉吸收的影响,并通过重金属形态分析探讨其作用机理.结果表明,施用添加剂可提高油菜地上部产量,高剂量生物炭和鸡粪复配处理增产效果最佳,最大增产率为174%.施用添加剂可显著降低油菜地上部镉含量,其中,高剂量生物炭和鸡粪复配处理降低效果最佳,最大降低率为72.0%,使所有供试品种地上部镉含量满足食品安全标准要求.施用添加剂可显著降低土壤TCLP提取态镉含量,最大降低率为36.5%.施用生物炭和鸡粪促进土壤镉由活性高的可交换态向活性低的有机结合态或残渣态转化,从而显著降低镉的生物有效性和可迁移性.以上结果表明,种植镉低积累品种同时施用生物炭和鸡粪可以满足油菜在镉污染土壤上安全生产的需要.  相似文献   
174.
Subcellular distributions and chemical forms of cadmium (Cd) in the leaves, stems and roots were investigated in low-Cd accumulation cultivars and high-Cd accumulation cultivars ofpakchoi (Brassica chinensis L.). Root cell wall played a key role in limiting soil Cd from entering the protoplast, especially in the low-Cd cultivars. The high-Cd cultivars had significantly higher leaf and stem Cd concentrations than the low-Cd cultivars in cell wall fraction, chloroplast/trophoplast fraction, organelle fraction and soluble fraction. In low-Cd cultivars, which were more sensitive and thus had greater physiological needs of Cd detoxification than high-Cd cultivars, leaf vacuole sequestrated higher proportions of Cd. Cd in the form of pectate/protein complexes (extracted by 1 tool. L~ NaC1) played a decisive role in Cd translocation from root to shoot, which might be one of the mechanisms that led to the differences in shoot Cd accumulation between the two types of cultivars. Furthermore, the formation of Cd- phosphate complexes (extracted by 2% HAc) was also involved in Cd detoxification within the roots of pakchoi under high Cd stress, suggesting that the mechanisms of Cd detoxification might be different between low- and high-Cd cultivars.  相似文献   
175.
The experiments were conducted to investigate the tolerance and enrichment capabilities by elucidating the physiological response and cadmium impact on iron and potassium accumulation amounts of brassica rape hairy roots under different cadmium concentrations by using liquid suspension culture method. The results showed the following. (1) The growth of hairy roots was not significantly different under low cadmium concentrations (below 100 μmol/L), whereas it was obviously inhibited under high cadmium concentrations (more than 100 μmol/L). Further, the maximum fresh weight of brassica rape hairy roots reached 4.34 g under 25 μmol/L cadmium stress after 7 days. (2) The content of ROS in brassica rape hairy roots increased with increasing concentrations of cadmium; the antioxidant enzyme activities of brassica rape hairy roots (SOD, POD, and CAT) decreased first and then increased with increasing cadmium concentrations under 1-day stress, whereas showed an opposite trend under 7-day stress. (3) PI staining and MDA content indicated that cellular damage was more serious with increasing cadmium concentrations. (4) With the increase of cadmium concentrations, cadmium content of hairy roots increased and reached maximum of 2.97 mg/g under 400 μmol/L cadmium stress after 7 days. The iron content also increased significantly with the maximal weight of 14.52 mg/g after 1-day cadmium stress, whereas no significant difference was noted under 7-day cadmium stress. The potassium content under 7-day cadmium stress was 1.6 times of that after 1-day stress (15.73 mg/g). The study showed that the physiological response of Brassica rape hairy roots was correlated with the concentration and time of cadmium stress. Moreover, cadmium stress caused metabolic disorders of iron and potassium in the hairy roots, but the hairy roots of Brassica rape had better enrichment effect on cadmium. © 2018 Science Press. All rights reserved.  相似文献   
176.
Inorganic selenium (Se) is absorbed and enriched by plants and converted into a stable and nutritionally important organic form, which subsequently when consumed by humans or animals results in increased Se tissue levels. Brassica is one of the most potent Se-enriched plants. The aim of this study was to compare differences in Se enrichment between two predominant Brassica plants namely Brassica rapa Linn L. and Brassica tumida Tsenet Lee L. on Se metabolic parameters. Plants exposed to soil Se levels (0, 0.5, 1, 2.5 or 5?mg/kg) were examined on the activity of glutathione peroxidase (GSH-Px), Se levels and expression of Se metabolism related genes using soil pots. Data showed that activities of GSH-Px in leaf and root of the two Brassica species were significantly increased in the presence of Se at 2.5?mg/kg. Se concentrations of leaf, stem and root in B. tumida Tsenet Lee L. and B. rapa Linn L. rose from 0.31 to 21.84-fold (leaf), 1.15 to 15.16-fold (stem) and 2.11 to 15.26-fold (root) in the presence of metal in a concentration-dependent manner. The highest expression levels of adenosine triphosphate (ATP), ATP sulfurylase (APS), selenocysteine methyltransferase (SMT), serine acetyltransferase (SAT), cysteine desulfurase (CysD) and S-adenosyl-l-Met:l-Met S-methyltransferase (MMT) in leaf of B. rapa Linn L. were found at 1?mg/kg Se. The highest expression levels of ATP, APS, SMT, SAT, CysD and MMT in leaf of B. tumida Tsenet Lee L. were observed at 2.5?mg/kg Se. The Se concentrations in leaf, stem and root of B. rapa Linn L. were higher than in B. tumida Tsenet Lee L. under the same soil Se level conditions. At the same Se level, differences in the expression of Se-related genes were observed between these two Brassica species. Our observations may be used to optimize the utilization of Brassica as a nutritional source of Se by growing this plant under certain soil conditions.  相似文献   
177.
通过盆栽试验,研究了铜陵铜尾矿对油菜生长和生理功能的影响.结果表明,油菜种子能在铜尾矿上萌发,但发芽率和发芽速率均小于正常土壤.尾矿能降低油菜叶绿素含量,而且对叶绿素a/b比值也有影响.在尾矿胁迫下,油菜叶片的细胞膜透性增加,硝酸还原酶活性降低,抗坏血酸含量下降,表明尾矿对油菜具有毒害作用.与对照相比,尾矿处理油菜根系表现为主根变短,侧根数减少,根系体积明显变小.尾矿能明显抑制油菜幼苗的根和茎叶生物量,降低根冠比.随着油菜的生长发育,尾矿的毒害作用更加明显.尾矿对油菜的影响最终反映在油菜的产量上.铜元素的毒害和尾矿的极端贫瘠是影响油菜生长的2个因素.成熟期油菜各器官铜含量大小依次为根>茎叶>籽粒,籽粒中铜含量与土壤和尾矿混合物中有效铜含量在α=0.01水平上显著正相关.  相似文献   
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